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Engrailed-2 同源盒基因与脊髓小脑苔藓纤维传入纤维的模式形成

The Engrailed-2 homeobox gene and patterning of spinocerebellar mossy fiber afferents.

作者信息

Vogel M W, Ji Z, Millen K, Joyner A L

机构信息

Maryland Psychiatric Research Center, University of Maryland Medical School, Baltimore 21228, USA.

出版信息

Brain Res Dev Brain Res. 1996 Oct 23;96(1-2):210-8. doi: 10.1016/0165-3806(96)00122-8.

Abstract

The mouse Engrailed-2 gene, En-2, appears to be involved in cerebellar pattern formation. Homozygous null mutants for En-2 have abnormal foliation patterns in the posterior half of the cerebellum and there are changes in Purkinje and granule cell gene expression in some posterior folia, possibly reflecting changes in cell identity. We have examined the distribution of spinocerebellar mossy fiber terminals in homozygous En-2hd null mutants to determine if En-2 is involved in regulating the pattern of afferent connectivity in the cerebellum. Spinocerebellar mossy fiber terminals were labeled following WGA-HRP injections in the lumbar region of 5 homozygous En-2hd mutants and 4 heterozygous controls. The distribution of spinocerebellar mossy fiber terminals was consistently altered in lobules VIII and IX of the En-2hd mutants. The principal changes were a reduction in the number of mossy fiber terminal fields in the dorsal aspect of lobule VIII and the dorsal midline field in lobule IX was fused into a single compartment. The results suggest that the deletion of En-2 expression does not transform lobule identity, at least with respect to afferent fiber positional information cues. However, the changes in foliation and afferent connectivity in the En-2 mutant support a broad role for the En-2 gene in cerebellar patterning.

摘要

小鼠的Engrailed-2基因(En-2)似乎参与了小脑的模式形成。En-2基因的纯合无效突变体在小脑后半部分具有异常的叶片模式,并且在一些后叶中浦肯野细胞和颗粒细胞的基因表达发生了变化,这可能反映了细胞身份的改变。我们已经研究了纯合En-2hd无效突变体中小脑脊髓苔藓纤维终末的分布,以确定En-2是否参与调节小脑中传入连接的模式。在5只纯合En-2hd突变体和4只杂合对照的腰椎区域注射WGA-HRP后,标记了脊髓小脑苔藓纤维终末。En-2hd突变体的小叶VIII和IX中脊髓小脑苔藓纤维终末的分布持续改变。主要变化是小叶VIII背侧苔藓纤维终末场的数量减少,小叶IX的背中线场融合成一个单一的区域。结果表明,En-2表达的缺失不会改变小叶身份,至少在传入纤维位置信息线索方面不会。然而,En-2突变体中叶状结构和传入连接的变化支持了En-2基因在小脑模式形成中的广泛作用。

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